Introduces the basics of electromagnetism, covering derivatives, vector calculus, scalar and vector products, and their applications in physics and engineering.
Explores forced external convection correlations and the procedure for solving convection problems, including the comparison of velocity and thermal boundary layers.
Outlines the Master in Computational Science and Engineering program at EPFL, detailing its structure, projects, and career opportunities for graduates.
Explores states of matter, energy transfer, and specific heat, emphasizing the importance of specific heat in determining energy requirements for temperature changes.
Covers the derivation of formal solutions to the Radiative Transfer Equation and discusses isotropic scattering, optical thickness, and Monte Carlo method applications.
Explores thermal radiation, convection, and heat transfer mechanisms in microsystems, including simulations and design optimizations for thermal sensors.
Introduces students to the physics course structure, emphasizing the importance of attending exercises and using mathematical tools for motion description.